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Modelling and slenderness design of high-capacity hybrid beam-columns under lateral cyclic loading

机译:高容量混合梁柱横向循环载荷模拟与纤细设计

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The ?dual-steel? concept involves combining High-Strength Steel (HSS) and mild steel to control the energy dissipation and overall failure of structures under seismic loads. In this study, the performance and design of a hybrid hollow beam?column were investigated with a focus on the seismic resistance. The hollow section was fabricated with mild steel plates (grade 250) and HSS tubes (grade 750) and can be used as a lightweight replacement for conventional composite members. A finite-element (FE) model was developed and validated against available experimental data. To consider the cyclic softening of HSS tubes, a combined kinematic and isotropic plasticity model was incorporated into the FE model. The cyclic performance of the hybrid hollow sections was compared with that of equivalent concrete-filled square composite members, and the strength and weight reduction benefits were assessed. Furthermore, considering the current and modified slenderness limits, a sensitivity study was performed on the section geometry. An optimum design for the section geom-etry was proposed, in which the HSS tube elements significantly increase the axial and lateral capacities of the hybrid section and the mild steel plates provide the required ductility to mitigate seismic deformations. The overall failure mechanism of this design is governed by mild steel plate elements, rather than a sudden failure initiated in the HSS tubes. ? 2021 Published by Elsevier Ltd.
机译:本?双钢?概念包括组合的高强度钢(HSS)和软钢,以控制地震载荷下结构的能量耗散和整体失效。在这项研究中,混合中空梁的性能和设计?柱中,重点放在了抗震调查。中空部分,用低碳钢板(级250)和HSS管(750级)制造,并且可以被用作轻质替换传统的复合构件。有限元(FE)模型的开发和对已有的实验数据进行了验证。考虑HSS管的循环软化,组合的运动学和各向同性塑性模型被编入有限元模型。混合中空部分的循环性能与等效混凝土填充正方形的复合构件进行了比较,强度和轻量化的好处进行了评估。此外,考虑到当前的和改性的长细限制,灵敏度研究对部分的几何形状进行。提出了该部分的geom-etry的最佳设计,其中所述HSS管元件显著增加的轴向和混合部的横向能力和低碳钢板提供所需的延展性以减轻地震变形。这种设计的整体失效机理是由软钢板元件,而不是在HSS管发起的突发故障管理。还是2021由elestvier有限公司发布

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